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首页> 外文期刊>Egyptian Journal of Basic and Applied Sciences >Structural and functional analysis of ocular regions of five marine teleost fishes ( Hippocampus hippocampus, Sardina pilchardus, Gobius niger, Mullus barbatus & Solea solea)
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Structural and functional analysis of ocular regions of five marine teleost fishes ( Hippocampus hippocampus, Sardina pilchardus, Gobius niger, Mullus barbatus & Solea solea)

机译:五种海洋硬骨鱼(海马沙丁鱼Sardina pilchardus 黑比哥 ce:italic>, Mullus barbatus Solea solea

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摘要

Five marine teleost fishes inhabiting different marine depths namelyHippocampus hippocampus(Linnaeus, 1758),Sardina pilchardus(Walbaum, 1792),Gobius niger(Linnaeus, 1758),Mullus barbatus barbatus(Linnaeus, 1758) andSolea solea(Linnaeus, 1758) were used in the present study. Their retinae and lenses were subjected for histological, scanning electron microscopy, SDS-PAGE and isoenzyme electrophoresis of alkaline phosphatase, malate and glucose-6-phosphate dehydrogenase. The present findings showed variant histological structures with characteristic photoreceptors mainly of either rods forH. hippocampus,M. barbatusandS. soleaor cones inS. pilchardus. Mixed photoreceptors are identified inG. niger. The fishes exhibited diversity in protein band expression coincides with change of pattern orientation in lens fibers arrangement and histological structures of retina. Isoenzyme electrophoresis of estimated isoenzyme showed differences between lens and retina of fishes especiallyH. hippocampus.It can be concluded that the retina and lens of the studied teleost fishes showed apparent varying structure reflecting the isoenzyme characteristic for preserving functional characteristic of vision according to the marine habitat depths.
机译:五种栖息在不同海底深度的硬骨鱼类分别为海马海马(Linnaeus,1758),沙丁鱼(Sardina pilchardus)(Walbaum,1792),黑比哥(Linnaeus,1758),Mullus barbatus barbatus(Linnaeus,1758)和Solea solea(Linnaeus)本研究。对它们的视网膜和晶状体进行组织学,扫描电子显微镜,SDS-PAGE和碱性磷酸酶,苹果酸和葡萄糖-6-磷酸脱氢酶的同工酶电泳。目前的发现显示出具有特征性感光体的变体组织学结构,这些感光体主要是H的任一杆。海马巴巴图斯山绝缘锥pilchardus。在G中鉴定出混合的感光体。尼日尔。鱼类在蛋白带表达方面表现出多样性,与晶状体纤维排列和视网膜组织学结构的模式方向变化相吻合。估计的同工酶的同工酶电泳显示鱼的晶状体和视网膜之间存在差异,尤其是H。可以得出结论,所研究的硬骨鱼类的视网膜和晶状体显示出明显的变化结构,反映了根据海洋生境深度保持视觉功能特征的同工酶特征。

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